CN210837306U - Multi-shaft double-head common rail type stranding machine - Google Patents
Multi-shaft double-head common rail type stranding machine Download PDFInfo
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- CN210837306U CN210837306U CN201922397030.1U CN201922397030U CN210837306U CN 210837306 U CN210837306 U CN 210837306U CN 201922397030 U CN201922397030 U CN 201922397030U CN 210837306 U CN210837306 U CN 210837306U
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- stranding
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- rack
- rotary jaw
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Abstract
The utility model discloses a multiaxis double-end is rail formula stranding machine altogether, including frame and stranding mechanism, its characterized in that, stranding mechanism includes left side stranded conductor device and right side stranded conductor device, left side stranded conductor device with right side stranded conductor device is installed respectively the left and right sides of frame, the length direction of frame is provided with the guide rail. The utility model discloses a set up the stranding mechanism of left and right both sides reverse work in the frame that shares, the stranding mechanism that can start left and right both sides simultaneously when processing shorter pencil carries out the stranded conductor, when processing longer pencil, opens one side stranding mechanism and carries out the stranded conductor, has both improved production efficiency, has improved equipment utilization again, realizes a tractor serves several purposes.
Description
Technical Field
The utility model relates to a pencil assembly field especially relates to a multiaxis double-end is rail formula stranding machine altogether.
Background
The stranding machine is a stranding mechanical device which can be widely applied to various soft/hard conductor wires, so that a plurality of single conductors are twisted into one strand to meet the process requirements of wires. Most of wire twisting machines in the current market use a machine head with a human-computer operation interface as a rotating end of a twisted wire, the machine head is connected with racks with different lengths, a movable tailstock with a twisted wire clamp is assembled on the racks, and the twisted wire is clamped on the rotating twisted wire clamp at the machine head end and the twisted wire clamp on the movable tailstock respectively to obtain twisted wire harnesses with different lengths. Because the market has limited demand for long wire harnesses, the utilization rate of the stranding machine for processing the long wire harnesses is not high, and if the stranding machine is used for processing short wire harnesses, the defects of resource waste, low production efficiency and the like exist.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a production efficient multiaxis double-end is rail formula stranding machine altogether to prior art not enough.
In order to achieve the above purpose, the utility model discloses a technical scheme is: a multi-shaft double-head common rail stranding machine comprises a rack and a stranding mechanism, and is characterized in that the stranding mechanism comprises a left stranding device and a right stranding device, the left stranding device and the right stranding device are respectively installed on the left side and the right side of the rack, and a guide rail is arranged in the length direction of the rack;
the left side wire stranding device comprises a left side headstock, a driving device I, a human-computer interface I, a left side movable tailstock and a bridge type engineering plastic drag chain I; the left headstock is arranged at the left end of the rack, the driving device I is arranged below the left headstock, the human-computer interface I is arranged on the left headstock, the left movable tailstock is connected to the guide rail in a sliding manner, and the bridge is an engineering plastic drag chain I arranged on the rack; the left headstock is provided with at least four rotary jaw mechanisms, the driving device I is used for driving the rotary jaw mechanisms to axially rotate along the rotary jaw mechanisms on the left headstock, and the left movable tailstock is provided with fixed jaw mechanisms which are in one-to-one correspondence with the rotary jaw mechanisms;
the right side wire stranding device comprises a right side headstock, a driving device II, a human-computer interface II, a right side movable tailstock and a bridge type engineering plastic tow chain II; the right headstock is arranged at the right end of the rack, the driving device II is arranged below the right headstock, the human-computer interface II is arranged on the right headstock, the right movable tailstock is connected to the guide rail in a sliding manner, and the bridge is an engineering plastic tow chain II arranged on the rack; the right-side headstock is provided with at least four rotary jaw mechanisms, the driving device is used for driving the rotary jaw mechanisms to rotate axially along the rotary jaw mechanisms on the right-side headstock, and the right-side movable tailstock is provided with fixed jaw mechanisms which correspond to the rotary jaw mechanisms one by one.
The utility model discloses a set up the stranding mechanism of left and right both sides reverse work in the frame that shares, the stranding mechanism that can start left and right both sides simultaneously when processing shorter pencil carries out the stranded conductor, when processing longer pencil, opens one side stranding mechanism and carries out the stranded conductor, has both improved production efficiency, has improved equipment utilization again, realizes a tractor serves several purposes.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a top view of the present invention.
Fig. 3 is a side view of the present invention.
Wherein the reference numerals are: 1. the device comprises a rack, 2, a stranding mechanism, 3, a left side stranding device, 3-1 a left side headstock, 3-2, a driving device I, 3-3, a human-computer interface I, 3-4, a left side movable tailstock, 3-5, a bridge type engineering plastic tow chain I, 4, a right side stranding device, 4-1 a right side headstock, 4-2, a driving device II, 4-3, a human-computer interface II, 4-4, a right side movable tailstock, 4-5 a bridge type engineering plastic tow chain II, 5, a guide rail, 6, a rotary clamping jaw mechanism, 7 and a fixed clamping jaw mechanism.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings.
As shown in fig. 1-3, a multi-axis double-head common rail type stranding machine comprises a frame 1 and a stranding mechanism 2, and is characterized in that the stranding mechanism 2 comprises a left stranding device 3 and a right stranding device 4, the left stranding device 3 and the right stranding device 4 are respectively installed on the left side and the right side of the frame 1, and a guide rail 5 is arranged in the length direction of the frame 1;
the left side wire stranding device 3 comprises a left side headstock 3-1, a driving device I3-2, a human-computer interface I3-3, a left side movable tailstock 3-4 and a bridge type engineering plastic drag chain I3-5; the left headstock 3-1 is arranged on the left end head of the frame 1, the driving device I3-2 is arranged below the left headstock 3-1, the human-machine interface I3-3 is arranged on the left headstock 3-1, the left movable tailstock 3-4 is connected to the guide rail 5 in a sliding manner, and the bridge is an engineering plastic drag chain I3-5 arranged on the frame 1; a rotary jaw mechanism 6 is arranged on the left headstock 3-1, a driving device I3-2 is used for driving the rotary jaw mechanism 6 to axially rotate on the left headstock 3-1 along the rotary jaw mechanism 6, and a fixed jaw mechanism 7 which is in one-to-one correspondence with the rotary jaw mechanism 6 is arranged on the left movable tailstock 3-4;
the right side wire stranding device 4 comprises a right side headstock 4-1, a driving device II 4-2, a human-computer interface II 4-3, a right side movable tailstock 4-4 and a bridge type engineering plastic drag chain II 4-5; the right headstock 4-1 is arranged on the right end head of the frame 1, the driving device II 4-2 is arranged below the right headstock 4-1, the human-computer interface II 4-3 is arranged on the right headstock 4-1, the right movable tailstock 4-4 is connected to the guide rail 5 in a sliding manner, and the bridge is an engineering plastic drag chain II 4-5 arranged on the rear side of the frame 1; the right headstock 4-1 is provided with a rotary jaw mechanism 6 which is uniformly distributed on the right headstock 4-1; the driving device II 4-2 is used for driving the rotary jaw mechanism 6 to axially rotate along the rotary jaw mechanism 6 on the right headstock 4-1, and the right movable tailstock 4-4 is provided with fixed jaw mechanisms 7 which are in one-to-one correspondence with the rotary jaw mechanisms 6.
When using the utility model discloses the time, if processing short pencil, then start left side stranded conductor device 3 and right side stranded conductor device 4 simultaneously, press from both sides the one end of pencil on the rotatory jack catch mechanism 6 of left side headstock 3-1 and right side headstock 4-1 respectively, press from both sides the other end of pencil on the fixed jack catch mechanism 7 of left side activity tailstock 3-4 and right side activity tailstock 4-4 respectively, then remove left side activity tailstock 3-4 and right side activity tailstock 4-4, straighten the pencil, fixed jack catch mechanism 7 is fixed motionless this moment, then start drive arrangement through human-computer interface, drive arrangement drives rotatory jack catch mechanism 6 and carries out the axial rotation to accomplish the pencil and turn round one. And if a longer wire harness is processed, the movable tailstock and the headstock of the wire stranding device on one side are closed, and the wire stranding device on the other side is used for stranding.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.
Claims (1)
1. A multi-shaft double-head common rail type stranding machine comprises a rack and a stranding mechanism, and is characterized in that the stranding mechanism comprises a left side stranding device and a right side stranding device, the left side stranding device and the right side stranding device are respectively installed on the left side and the right side of the rack, and a guide rail is arranged in the length direction of the rack;
the left side wire stranding device comprises a left side headstock, a driving device I, a human-computer interface I, a left side movable tailstock and a bridge type engineering plastic drag chain I; the left headstock is arranged on the head of the left side end of the rack, the driving device I is arranged below the left headstock, the human-computer interface I is arranged on the left headstock, the left movable tailstock is connected on the guide rail in a sliding manner, and the bridge is an engineering plastic drag chain I arranged on the rack; the left headstock is provided with at least four rotary jaw mechanisms, the driving device I is used for driving the rotary jaw mechanisms to axially rotate along the rotary jaw mechanisms on the left headstock, and the left movable tailstock is provided with fixed jaw mechanisms which are in one-to-one correspondence with the rotary jaw mechanisms;
the right side wire stranding device comprises a right side headstock, a driving device II, a human-computer interface II, a right side movable tailstock and a bridge type engineering plastic tow chain II; the right headstock is arranged on the right end head of the rack, the driving device is arranged below the right headstock, the human-computer interface II is arranged on the right headstock, the right movable tailstock is connected to the guide rail in a sliding manner, and the bridge is an engineering plastic tow chain II arranged on the rack; the right-side headstock is provided with at least four rotary jaw mechanisms, the driving device is used for driving the rotary jaw mechanisms to rotate axially along the rotary jaw mechanisms on the right-side headstock, and the right-side movable tailstock is provided with fixed jaw mechanisms which correspond to the rotary jaw mechanisms one by one.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922397030.1U CN210837306U (en) | 2019-12-27 | 2019-12-27 | Multi-shaft double-head common rail type stranding machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922397030.1U CN210837306U (en) | 2019-12-27 | 2019-12-27 | Multi-shaft double-head common rail type stranding machine |
Publications (1)
Publication Number | Publication Date |
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CN210837306U true CN210837306U (en) | 2020-06-23 |
Family
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Family Applications (1)
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CN201922397030.1U Active CN210837306U (en) | 2019-12-27 | 2019-12-27 | Multi-shaft double-head common rail type stranding machine |
Country Status (1)
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CN (1) | CN210837306U (en) |
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2019
- 2019-12-27 CN CN201922397030.1U patent/CN210837306U/en active Active
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